Jump directly to content

Swedish textile fibre with sights on the world market

Knitted sweater

A completely new cellulose-based textile fibre so durable and cheap that it can reduce the textile industry’s carbon footprint. This is what TreeToTextile has succeeded in developing. RISE has been involved throughout the journey – from idea to demo facility.

Today’s textile production leaves a huge carbon footprint. The textile and fashion industry is one of the most resource-intensive and polluting industries in the world, and many of the materials used today are heavily criticised. Cotton accounts for about a quarter of the world’s textile fibres, but its production requires large amounts of water and pesticides. The rest of global production is mostly synthetic fibres, such as polyester, made from fossil fuel-derived raw materials, which also contribute to the release of microplastics. There is therefore considerable need and interest in sustainable alternatives to cotton.  

“Not least because textile consumption will increase as the global middle class grows,” says Tobias Köhnke, Head of the Fibre Development unit at RISE. “To meet that need in a sustainable way, we need to find a solution to develop more bio-based materials.”

Brand-new sustainable process

This particular challenge is the driving force behind the Swedish start-up TreeToTextile. They have developed a new process to produce a cellulose-based textile fibre that not only has a lower carbon footprint but is also cheaper than the methods used today. 

“Our goal was to create an environmentally friendly fibre with the lowest possible CO2 footprint at the lowest possible cost,” says Åsa Östlund, Head of Research and Development at TreeToTextile.

Making textiles from cellulose is not in itself something new – viscose is a well-known example. But the processes currently used to dissolve the cellulose fibre and turn it into threads, which can then be turned into fabric, either require large amounts of hazardous chemicals or are very expensive.

“What is unique in this project is that we have found a solvent that is both safe to work with and cheap,” says Köhnke. “We have also developed a way to recycle and reuse the chemicals. This is huge, it’s something that has been researched all over the world for many years.”

The fibre developed by TreeToTextile fulfils and exceeds the original goal: it has a carbon footprint of 0.6 kg CO2 equivalents per kilogram of fibre – the most sustainable viscose has 1.8. For certain viscose types, the figure is as high as 8, which is more than ten times as high as TreeToTextile's fibre.

“Our technology process comes also at a much lower production cost,” says Östlund.

Essentially all research and development has taken place at RISE

From raw material to product

The project started in 2009, when entrepreneur Lars Stigsson recognised the research potential in a new method for cellulose dissolution. Operators such as H&M Group, Inter IKEA Group, and later Stora Enso all joined the project. The start-up of a new demo facility is now underway to verify the process in a continuous system that will be fully scalable.

RISE has been involved from the beginning as a research and development partner.

“Essentially all research and development has taken place at RISE,” says Köhnke. “We have built-up infrastructure to be able to take on assignments like this. We have expertise and equipment on a pilot scale for the entire value chain, from the raw material to the evaluation of the finished product.”

Developing a research idea into full-scale production takes time and requires an array of skills, and according to Östlund, the partnership with RISE has been crucial:

“If we had done this ourselves, it would have taken even longer and we would have had to take greater risks; RISE has made an enormous difference. They have the expertise, so we don’t have to recruit and take on that kind of risk. For a smaller start-up company, there are great advantages to being flexible with regard to the resources you need to obtain, and bringing in specific skills where needed.”

And both in Sweden and internationally, there is considerable interest in finding new, sustainable textile fibres.

“We receive many requests from companies that want to do the same thing, not only with cellulose but also with different raw materials, such as proteins or substances from the marine environment. We have shown that we are an important innovation partner,” says Köhnke.

About TreeToTextile

TreeToTextile is a Swedish start-up within the textile industry with a mission to deliver better fibers to all. Supported by strong owners; H&M Group, Inter IKEA Group, Stora Enso and LSCS Invest, they develop and commercialize a new innovative cellulose-based fibertechnology, to provide textile fibers with good sustainability performance at a low production cost.

 

Read more at treetotextile.com

Textiles Sekundär områdes navigation:
Circular transition
Biobased circular processes
Biobased materials

PayItForward - Digital solutions for increased reuse of textiles

PayItForward
Illustration, second hand clothes

The textile industry faces major challenges to reduce its climate impact. This feasibility study addresses how digitization can help increase the amount of clothing that is reused while providing social benefits through the activities of voluntary organizations.

Coordinator
Active
Textile
Not applicable
8 months
800 000 kr
Division: Division Materials and Industry

The feasibility study investigates the conditions for more efficient e-commerce, with the aim of increasing the lifespan of more products through the sale of recycled goods.

The project takes its starting point from the needs of recycling organizations, existing business models, and digital toolboxes. With this as a background, the possibilities for sustainable, digital development for voluntary organizations are investigated. Currently, they are limited in their development work and often rely on voluntary work efforts, but with this project, the ambition is to create opportunities for them to move forward together, with digitization as leverage, and enable more recycled goods to reach the end consumers.

The feasibility study is led by RISE, other key actors participating in the work are Lund University, Myrorna, Björkåfrihet, Stadsmissionen (Stockholm/Göteborg), Erikshjälpen, Röda Korset.

Emma Enebog

Projketledare
+46 10 228 48 98 Read more about Emma
Profile image

Contact Emma

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.

Mattias Esbjörnsson

Projektledare
+46 10 228 42 72 Read more about Mattias
Profile image

Contact Mattias

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
12. Responsible consumption and production
Project end date: Textiles Sekundär områdes navigation:
Circular transition
Digitalisation

Closed-loop recycling of wool/synthetic blend textiles

Recycling of wool/synthetic textiles
Wool

Textile production of today almost exclusively uses virgin raw materials. A lot of the textiles, especially clothing, are only used for a short period of time whereafter they become waste.

This project aims to close the loop, by developing new methods to use wool-based textile waste as raw material for new textile fibres.

Coordinator
Completed
Textile
Not applicable
Four years
Division: Division Materials and Industry

The only textile recycling method in use today is mechanical recycling, where fabrics and garments are shredded and then reshaped into, for example, felts, blankets and insulating materials.

Textile materials are often composed of a blend of fibre materials, where the fibre constituents each contribute with some attractive characteristic such as moisture absorption, abrasion resistance, shine or a low price. The fact that the included fibres have such different characteristics, can make mechanical recycling of these textiles difficult. Moreover, mechanical recycling causes fibre shortening and inevatibly results in downcycling.

In this project we aim to develop methods for chemical recycling of wool/synthetics blend textiles by:

1. separation and analysis of the different fibre components.

2. wet spinning of new textile fibres from the recycled wool.

Aleksandra Kozlowski

Forskare
+46 10 722 33 65 Read more about Aleksandra
Profile image

Contact Aleksandra

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
9. Industry, innovation and infrastructure
12. Responsible consumption and production
Project end date: Textiles Sekundär områdes navigation: Circular transition

Spinnability evaluation of new polymer materials

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Spinnability evaluation of new polymer materials Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

RISE in Mölndal conducts research and development of textile fibres, with a special focus on material transition for a sustainable development. Melt spinning poses certain requirements on the material, including high temperature stability and suitable flow properties. We can evaluate the spinnability of newly developed materials.

Purpose/Benefit:

Melt spinning is the most commonly used industrial fibre spinning method. It’s great advantage is that the method requires only heat, no solvents, to transform polymers into a melt which can be extruded and drawn into thin fibres.

Globally, there is at present a rapid development of thermoplastics from biobased and recycled feedstocks, and consequently melt spinning will be increasingly useful to produce environmentally sustainable textile fibres.

The fibre spinning expertise RISE can support material producers by performing evaluation of the spinnability of new polymer materials. This evaluation requires only small amounts of polymer (approx. 100 grams) and is suitable also for R&D materials.

If the material is found to have good spinnability, larger scale trials and pilot fibre production can be carried out in our equipments for lab-scale and/or semi-industrial fibre spinning.

Method (what/which methods are used to perform the service):

Several material properties are relevant for spinnability, and our evaluation includes characterisation of:

  • Degradation temperature, using thermogravimetric analysis (TGA)
  • Melting point and degree of crystallinity, measured by differential scanning calorimetry (DSC)
  • Composition analysis, for example by FTIR
  • Flow properties (shear viscosity and extensional viscosity) as a function of shear rate and temperature, as measured in a capillary rheometer (Netzsch RH10)
  • Melt strength as a function of take-up rate, measured in a capillary rheometer
  • Small scale extrusion of monofilaments, in capillary rheometer
  • Mechanical characterisation of fibres, by tensile testing
Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

Small amounts of fibres on a bobbin.
Report in Swedish or English.

Delivery time:

According to agreement.

Area: Material transition Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Sabrina Kopf, Forskare
Ezgi Ceren Boz Noyan, Forskare
Melt spun textile fibres
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: Description of preparation Preparation information:

According to agreement.

Certification and marking: Not applicable Type of service: Innovation services Instrument: Not applicable General area: Not applicable Order information: For more information or ordering, please contact the person(s) listed below. URL: /en/materials-and-durability/textiles/test-demo/textile-fiber-development-test-… Divison (OLD): Division Materials and Industry Delivery level: Not applicable
sabrina.kopf@ri.se,ezgi.ceren.boz.noyan@ri.se
Description for CTA: Läs mer om vår testbädd för textilfiberutveckling
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
Documents:
9. Industry, innovation and infrastructure
12. Responsible consumption and production
Order
form
Textiles Sekundär områdes navigation:
Metrology
Production and manufacturing
Biotechnology
Chemical products and processes
Tjänstetyp tagg: Provning

RE:MIX III: Chemical recycling of synthetic textile blends

RE:MIX III Chemical recycling of textile
Products of chemical recycling of synthetic textiles

Each year the average Swedish citizen throws 7.5 kg of textile in the trash, textiles which are then incinerated. The value of 80 000 tons of textile is hence lost, every year. In the project Re:MIX III, RISE and COWI will develop a new method to utilize this lost resource.

Project manager
Active
Circular transition Plastics Textile
Västra Götaland Region
1 year
Division: Division Materials and Industry

Purpose and goal

  • To optimize a method to separate and recycle synthetic textile blends, focused on blends of polyester, nylon and elastane.
  • To explore possible pre-treatments needed to prepare the textile for separation into high value products
  • To evaluate a possible upscaling of the method for separation and possible pre-treatment into an industrial process

Utmaning

Textile waste is a large and complex waste stream that currently is recycled to a very low degree, but instead ends up in a landfill or is incinerated. The few available recycling methods for textiles does not work very well for textile blends, where several types of textile fibers are found in the same garment. Some such notoriously hard-to-recycle product categories are swimwear, active wear, underwear and pantyhose. Further, these product categories are perceived as intimate and are hence less attractive for reuse, which otherwise is the preferred option to keep the value of textiles.

Solution

Through chemical recycling methods synthetic textile can be decomposed into their building blocks. These small molecule building blocks may then be used as a raw material to produce new textile fibers or platform chemicals, thereby replacing fossil oil. By smart design of the recycling method the decompositions products from the different components in textile blends can be separated and recovered.

Effect

By development of new chemical recycling methods, the fossil carbon atoms in textiles can be turned into recycled carbon atoms which, in turn, can be used for production of recycled plastics and textiles and therefore diminish our dependency of fossil oil resources.

 

Anna Edsberger

Forskare
+46 10 228 46 62 Read more about Anna
Profile image

Contact Anna

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
12. Responsible consumption and production
13. Climate action
COWI Division Industri i Sverige
Project outcomes
Attach document:

Project end date: Textiles Sekundär områdes navigation: Circular transition

Pilot scale melt spinning of multi-component textile fibres

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Pilot scale melt spinning of multi-component textile fibres Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

At RISE in Mölndal, we offer pilot scale melt spinning R&D services for textile fibres. Our unique facility enables the development of multi-component fibres from thermoplastic, biobased and recycled polymers – supporting companies and researchers in creating innovative and sustainable textile materials.

Purpose/Benefit:

Melt spinning is the most widely used method for producing synthetic fibres such as polyester and nylon. With our four-extruder pilot line, RISE enables the production of fibres that combine up to four different polymers in a single yarn or filament. This opens opportunities for technical textiles, apparel, and functional applications, while also providing a testbed for recycled and biobased polymers under industry-like processing conditions.

Method (what/which methods are used to perform the service):

Our pilot-scale spinning line is designed to replicate industrial conditions while remaining flexible for research and prototyping. With four independent material channels we can combines polymers with different thermal and rheological properties. 

Our pilot trials can include:

  • Melt spinning with up to four different polymers in one fibre (0.1-7 kg/h, speeds up to 6000 m/min)
  • A wide selection of fibre geometries and cros-sections (side-by-side, trilobal, hollow, islands-in-the-sea, pie wedge).
  • Multifilament spinning with 12–72 filaments.
  • Post-treatments such as crimping and cutting to staple fibres.
  • Suitable characterisation of fibres and yarns. 
Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

In addition to pilot-scale production, RISE offers spinnability evaluation of new polymers and lab-scale melt spinning for early-stage fibre development. These services allow you to test material properties, optimise fibre formulations, and prepare for successful scale-up to pilot or industrial production.

Contact our melt spinning experts

Interested in exploring melt spinning solutions or prototyping innovative fibres and yarns? Our experts are ready to collaborate with you on research and development projects, from lab-scale trials to pilot production. 

Delivery time:

According to agreement.

Area:
Material transition
Textile
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Sabrina Kopf, Forskare
Maria Gröndahl, Enhetschef
Melt spinning in progress
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: Description of preparation Preparation information:

According to agreement.

Certification and marking: Not applicable Type of service: Innovation services Instrument: Not applicable General area: Not applicable Order information: For more information or ordering, please contact the person(s) listed below. URL: Read more about our Textile fiber development testbed Divison (OLD): Division Materials and Industry Delivery level: Not applicable
sabrina.kopf@ri.se,maria.grondahl@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
9. Industry, innovation and infrastructure
12. Responsible consumption and production
Purpose - Header: Advantages of multi-component melt spinning Metod - Header: Our pilot melt spinning capabilities Delivery - Header: Other R&D services in melt spinning
Order
form
Textiles Sekundär områdes navigation:
Circular transition
Production and manufacturing
Biobased materials
Tjänstetyp tagg: Produkttillverkning

AI for resource-efficient circular fashion

FAIR
43 / 5,000 Translation results AI to support second-hand textile sorting

We are building a large open dataset on second-hand clothes, and exploring how AI can help in creating a decision-support tool for sorting facilities.

Participant
Completed
Work environment Artificial intelligence Circular transition Design Digitalisation Climate adaptation Textile
Not applicable
2,5 years
7000000
Division: Division Digital Systems and Societal Transformation

 

Our principal objective is to identify, design, and implement data-centric AI solutions tailored specifically for the second-hand textile industry, emphasizing automating the textile recycling sorting process. We aim to construct an extensive, open dataset of used clothing and use this information to train ML models to streamline and optimize the textile recycling process.

Introduction

Textiles are the fourth highest pressure category in the EU regarding primary raw materials and water (after food, housing, and transport) and fifth for GHG emissions (EEA). Europeans consume about 11 million tonnes of textiles annually; today, only 2.8 million tonnes are collected for reuse or recycling. The same is true globally, where only 20% of the yearly textile consumption is collected, whereas 80% is incinerated or ends up in landfills. To address this, a new European Waste Directive has been put forward, which states that by January 1, 2025, EU member states are obliged to have systems in place for separate collection of textiles, which will drastically increase the collected textile volumes and the need for textile sorting for both reuse and recycling. In Sweden alone, 75,000 tonnes of textiles per year are discarded and become residual waste and input material for central heat power plants.

The Role of AI and Datasets

High-quality datasets for used clothes do not exist. Data is the key to building robust AI models. We are collecting data for 30,000 clothes with three images each, annotated by expert sorters to identify brand, damage, pattern, and optimal use, among other attributes. The data will be made public at the end of the project to enable efficient automated solutions in the second-hand clothing industry.

Our solution

Our open dataset will be released under permissive licenses to allow broad use contributing significantly to circularity for textiles and more efficient sorting processes. An updated version of the dataset is available for download on Hugging Face. One of the unique challenges in the second-hand clothing industry is that many (non-profit) organizations have untrained volunteers sorting clothes daily. Extensive training is costly and time-consuming. We hope our AI-powered automated decision support tool can help solve this problem. Our ultimate goal is to considerably extend the lifespan of clothing, thereby reducing the need for new production. 

Partners

The project involves two well-established innovation environments, Wargön Innovation, and RISE. We are fortunate to partner with various partners in the second-hand clothing industry including the Red Cross, Myrorna, BjörkåFrihet, Texaid, MiniKit, and ShareTex.

8. Decent work and economic growth
9. Industry, innovation and infrastructure
12. Responsible consumption and production
Final report
Attach document: Project end date: Textiles Sekundär områdes navigation:
Circular transition
Artificial intelligence
Data Science
Production and manufacturing

Cellulose pulp for textile processes

Cellulose pulp for textile processes
Paper

Dissolving pulp is an important product used in the manufacture of fiber materials, which are used in the textile industry.

With today's high focus on sustainability, cellulose pulp is both a substitute for synthetic textile materials made from oil and a substitute/complement to cotton, which requires large areas of land to grow and large volumes of water for irrigation.

The cellulose pulp area covers both the production and evaluation of the pulp for different applications. The main application is the viscose process, but there are also other processes for regenerating cellulose and different types of cellulose derivatives. This area also includes the modification of fibres such as pulp fibres, natural fibres such as cotton and recycled textile fibres. Expertise in this area includes process optimisation of the chemical pulping process, the viscose process and the subsequent spinning process as well as the treatment of fibres for more efficient modification and improved dissolution of the cellulose.

Our expertise

RISE has long experience and deep knowledge of the two main pulp processes for the production of dissolving pulp: the sulphite process and the sulphate process before hydrolysis. The activities in this area include optimization of the process parameters in the different unit processes in boiling and bleaching with respect to both energy and chemical consumption as well as to the properties of the final product. In this area, RISE has also worked extensively with modification of recycled textile fibres, mainly cotton fibres, such as decolourisation or activation of the fibre wall for subsequent steps.

What we offer

RISE is unique in Europe in having a complete set of pilots under one roof; from chipping, digestion and bleaching via viscose solution to viscose yarn as a final product in a spinning pilot. In addition, there are opportunities to test processes other than the viscose process to regenerate the cellulose and to investigate different types of raw materials and their suitability to produce regenerated cellulose and different types of cellulose derivatives. We can offer you tailor-made projects through the whole chain from cellulose feedstock to yarn. Customers can be existing producers of dissolving cellulose, future players in this field and various research initiatives. In addition to the pilot projects, there is the possibility of complete analysis and evaluation of the respective process steps and the properties of the final products in our laboratories.

Lars Sundvall

Forskare
+46 70 526 52 21 Read more about Lars
Profile image

Contact Lars

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.

Diana Reyes Forsberg

Forskare
+46 10 722 33 88 Read more about Diana
Profile image

Contact Diana

CAPTCHA

* Mandatory 

By submitting the form, RISE will process your personal data.
Division (OLD): Division Bioeconomy Division: Division Bioeconomy Textiles

Analysis of siloxanes (D4, D5, D6) in textile and plastics

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Analysis of siloxanes (D4, D5, D6) in textile and plastics Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

It is important that the materials on the market are free of hazardous and regulated substances. Chemical analysis is a way to gain control over the products' chemical content.

Purpose/Benefit:

Society and consumers place great demands on companies and their products. The legislation also means that you as an actor must have complete information and control over which chemicals your products contain. It is especially important with products for children and goods that come into contact with the skin, such as clothes and accessories.

We help you interpret chemical legal requirements and restrictions that apply to goods made of textile materials and plastics and that are linked to, for example, REACH and POPs. We suggest which analyzes you need to do based on legal requirements, but also other requirements specifications such as eco-labels or procurement requirements.

Method (what/which methods are used to perform the service):

Determination of siloxanes D4, D5 och D6 (SVHC substances) in silicone, plastics and textile.

QUANTIFICATION OF RESIDUAL AMOUNTS OF CYCLIC VOLATILE METHYL SILOXANES IN SILICONE ELASTOMERS described by CES – Silicones Europé, revised version January 2019

Sample amount 20 grams

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

Written report in Swedish or English.

Delivery time:

The normal delivery time is 10 working days after ordering and received sample material.

Area: Chemical and biological analysis Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Carina Berglund, Forskare
Elisabeth Olsson, Forsknings- och utvecklingsingenjör
Pipetting of liquid in to a GC-vial for analysis
Field measurements: No Price type: 1 Division: Division Materials and Industry Preparation: No preparation required Standards:

Determination of siloxanes D4, D5 and D6 (SVHC substances)

QUANTIFICATION OF RESIDUAL AMOUNTS OF CYCLIC VOLATILE METHYL SILOXANES IN SILICONE ELASTOMERS described by CES – Silicones Europé, revised version January 2019

Certification and marking: Not applicable Type of service: Testing / Analysis / Evaluation Instrument: Not applicable General area: Not applicable Order information: Please order via the contact person(s) listed at the bottom of the page. Divison (OLD): Division Materials and Industry Delivery level: Not applicable
carina.berglund@ri.se,elisabeth.olsson@ri.se
/en/about-rise/operations/mission-governance/policy-documents/privacy-policy
Order
form
Chemical and biological analysis Sekundär områdes navigation:
Metrology
Plastics
Textiles
Health and life science
Tjänstetyp tagg: Provning

Characterisation of viscose fibre

Name of service (page headline, shown in promos – maximum of 70 characters incl. spaces): Characterisation of viscose fibre Lead (include SEO-words and the main benefits for your target groups. Stick to one paragraph, maximum 2-3 sentences):

Fibre characterisation such as linear density, fibre strength or tenacity and elongation of staple fibres and filaments from viscose show the mechanical properties of the fibre.

Purpose/Benefit:

RISE is equipped with two instruments for determining, among other things, linear density, fibre strength or tenacity and elongation of staple fibres and filaments from viscose. Spin studies based on viscose solution from dissolving cellulose, either manufactured in our pilots or delivered from customers, can be done in our spin pilot after which the final viscose fibre is characterised. The most common analysis is done on dry fibre, but wet fibre can also be analysed. 

Method (what/which methods are used to perform the service):

The instruments are partly a Vibrodyn 400 and partly a Vibroscope 400 from Lenzing Instruments. The determinations are based on the methods SS-EN ISO 5079, ISO 1973: 1995 (E) and ISO 1130-1975 (E). 

RISE leads research, development, and innovation in viscose manufacturing. By combining advanced technology with scientific and practical expertise, RISE enhances efficiency, quality, and sustainability. Committed to advancing technology, RISE drives viscose development globally.

Delivery (what does the client get after performed service – e.g. a report, certificate etc.):

RISE offers a report that includes data in Excel format along with relevant images and diagrams. It is carefully compiled using standard methods for the analyses performed.

If a more detailed report is required, RISE has the capacity to provide a comprehensive scientific report based on the results and background information supplied by the customer, available upon request and quotation.

Delivery time:

The delivery of results is scheduled based on our order backlog and the scope as well as the complexity of your assignment. We aim to ensure that your results are delivered on time, taking into account the specific requirements of your project. Thank you for your understanding and patience as we work to provide you with the best possible service.

Area:
Biorefinery
Pulp and paper
Textile
Contact person (Enter one name per field. Activated personal contact pages will appear automatically):
Nadine Hollinger, Forsknings- och utvecklingsingenjör
Diana Reyes Forsberg, Forskare
Tread
Field measurements: No Price type: 1 Division: Division Bioeconomy Preparation: No preparation required Certification and marking: Not applicable Type of service:
Innovation services
Testing / Analysis / Evaluation
Instrument:
Filters - optical properties
Flow meters
Weights
General area:
Mass / Weight
Temperature
Time and frequency
Pressure and vacuum
Order information: Ordering is via contact person Divison (OLD): Division Bioeconomy Delivery level: Not applicable
nadine.hollinger@ri.se,diana.reyes.forsberg@ri.se
/en/node/9710
1. No poverty
6. Clean water and sanitation
7. Affordable and clean energy
9. Industry, innovation and infrastructure
13. Climate action
14. Life below water
15. Life on land
Purpose - Header: Offer Metod - Header: Methods, Instruments and Expertise Delivery - Header: Delivery
Order
form
Textiles Sekundär områdes navigation:
Metrology
Production and manufacturing
Tjänstetyp tagg: Provning